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NUCLEAR MATRIX STRUCTURES AND GENOMIC FUNCTION

NUCLEAR MATRIX STRUCTURES AND GENOMIC FUNCTION
核基质结构和基因组功能
批准号:
6635812
负责人:
Ronald Berezney
金额:
$33.88万
依托单位国家:
美国
项目类别:
财政年份:
1977
资助国家:
美国
项目状态:
已结题
起止时间:
1977-09-30 至 2004-05-31

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中文摘要
翻译
细胞核是所有真核细胞(包括人类细胞)遗传信息的储存库,尽管在确定DNA复制、转录和RNA剪接和加工等主要基因组功能的基本分子特性方面取得了相当大的进展,但我们对这些过程在功能细胞核范围内如何组织和协调的认识直到最近仍然非常有限。随着三维显微镜和计算机图像分析技术的发展,分子探针的应用取得了沿着令人印象深刻的进展,这一不足正在迅速得到纠正,并导致了基于核结构功能动力学的细胞核新观点。 原位标记结合三维显微镜和计算机成像技术揭示了DNA复制和转录位点在细胞核中被组织成更高级的单元或“区域”。 在细胞周期中复制和转录区域的动态相互作用和“重新分区”可能形成哺乳动物细胞中复制和转录程序的复杂全局协调的结构基础。 作为这种功能组织的基础之一,基因组在间期核中排列在离散的染色体区域中。 在保持DNA完整的条件下提取细胞核基质后,这种组织得到了惊人的保持。 核基质内部组分的适当提取导致染色体区域的相应破坏,沿着释放作为染色体区域锚定蛋白候选物的蛋白质的离散子集。 在此基础上,我们提出了以下具体目标:(1)进一步发展三维显微的多维计算机成像技术:(2)阐明DNA复制的三维时空特性和早期S期基因复制的转录位点;(三)、研究染色体区域与DNA复制和转录位点的高阶结构域的关系,并表征候选染色体区域锚蛋白质;(4)研究活细胞中DNA复制和转录位点的三维动力学。
英文摘要
The cell nucleus is the repository for the genetic information of all eucaryotic cells including those of man. Despite considerable progress in defining basic molecular properties of the primary genomic functions of DNA replication, transcription, and RNA splicing and processing, our knowledge of how these processes are organized and coordinated within the confines of the functional cell nucleus has been until recently very limited. Impressive progress in applying molecular probes along with developments in 3-D microscopy and computer image analysis is rapidly correcting this deficiently and is leading to a new view of the cell nucleus based on the functional dynamics of nuclear architecture. In situ labeling coupled with three dimensional microscopy and computer imaging techniques reveal that DNA replication and transcription sites are organized into higher order units or "zones" in the cell nucleus. The dynamic interplay and "re-zoning" of replication and transcription regions during the cell cycle may form the structural basis for the elaborate global coordination of replicational and transcriptional programs in the mammalian cell. As one basis for this functional organization, the genome is arranged in discrete chromosome territories in the interphase nucleus. This organization is strikingly maintained following extraction of cells for nuclear matrix under conditions which maintained the DNA intact. Appropriate extraction of the nuclear matrix internal components leads to a corresponding disruption of chromosome territories along with the release of a discrete subset of proteins that are candidates for being chromosome territory anchoring proteins. With these previous studies as a basis we propose the following specific aims: (1) Further develop multi-dimensional computer imaging approaches to 3-D microscopy; (2) Elucidate the 3-D spatio-temporal properties of DNA replication and transcription sites for genes replicating in early S-phase; (3) Study chromosome territories in relations to higher order domains of DNA replication and transcription sites and characterize candidate chromosome territory anchor proteins; (4) Investigate the 3-D dynamics of DNA replication and transcription sites in living cells.
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FASEB RESEARCH CONFERENCE: NUCLEAR STRUCTURE AND CANCER
CONFERENCE ON THE NUCLEAR MATRIX
  • 批准号:
    2728442
  • 项目类别:
  • 资助金额:
    $0.38万
  • 财政年份:
    1998
  • 负责人:
    Ronald Berezney
  • 依托单位:
NUCLEAR MATRIX STRUCTURES AND GENOMIC FUNCTION
NUCLEAR MATRIX STRUCTURE AND DNA REPLICATION
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